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FPGA Implementation of High Speed Latency Optimized Optical Communication System Based on Orthogonal Concatenated Code

机译:基于正交级联码的高速延迟优化光通信系统的FPGA实现

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There is an immense need of very high speed robust data communication in many critical applications like radar communication, satellite communication, high energy physics experiment (HEP) and biomedical instrumentation etc. Transient errors due to radiation and other environmental hazards are responsible to create some temporary malfunctions in such high speed communication system. Concatenated code can make the high speed communication more robust against transient errors. This paper presents a novel design of latency optimized optical communication system involving orthogonal concatenated code generated through BCH code (named after Raj Bose and D. K. Ray-Chaudhuri) and Hamming code as component code and its efficient implementation on hardware using Kintex-7 FPGA board. Our design optimizes the transmission latency of the system to a great extent and makes it extremely efficient for real time high data rate applications. We have successfully tested our design for board to board communication over latency optimized optical link at ~5 Gbps data rate. Resource utilization, power estimation and bit error rate (BER) of our implemented system are also reported.
机译:在许多关键应用中,例如雷达通信,卫星通信,高能物理实验(HEP)和生物医学仪器等,都非常需要高速,鲁棒的数据通信。由于辐射和其他环境危害引起的瞬态误差会造成一些暂时性的后果。在这样的高速通信系统中发生故障。级联代码可以使高速通信对瞬态错误的鲁棒性更高。本文介绍了一种延迟优化的光通信系统的新颖设计,该系统涉及通过BCH代码(以Raj Bose和D.K. Ray-Chaudhuri命名)和汉明代码作为组件代码生成的正交级联代码,以及使用Kintex-7 FPGA板在硬件上的高效实现。我们的设计在很大程度上优化了系统的传输延迟,并使其对于实时高数据速率应用极为有效。我们已经成功通过了针对延迟优化的光链路以约5 Gbps数据速率进行板对板通信的设计测试。还报告了我们已实现系统的资源利用率,功率估计和误码率(BER)。

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